采用开放式绕组感应电机的双逆变器驱动的PWM控制

R. Haque, A. Kowal, J. Ewanchuk, A. Knight, J. Salmon
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引用次数: 39

摘要

双pwm逆变器驱动开绕组感应电机可以是一个有吸引力的电机驱动系统时,从直流电池电源操作。使用浮动直流链路电容器操作其中一个逆变器提供两个主要功能:无功电压支持连接到直流电池电压源的主桥;升压,提高电机端电压。后一种特性消除了使用单独的dc-dc转换器来提供升压的要求。由此产生的驱动系统可以提供以下几个好处:通过在统一功率因数下操作主桥来降低电池的平均电流;在较宽的运行速度范围内提高电机扭矩和效率;蓄电池电压波动补偿;降低电机谐波损耗;消除共模循环电流。本文描述了两个逆变器的pwm控制方案,以在电机的整个动态速度范围内调节浮桥电容电压,同时还提供所需的电机需求电压。实验结果验证了电机驱动系统的运行和浮电容电压的调节。在感应电机负载下的实验结果证实了该电机驱动系统的实际可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PWM control of a dual inverter drive using an open-ended winding induction motor
A dual pwm inverter drive operating an open-winding induction motor can be an attractive motor-drive system when operated from a dc battery source. Operating one of the inverters using a floating dc-link capacitor provides two main functions: reactive voltage support for the main bridge connected to the dc battery voltage source; voltage boosting to increase the motor terminal voltage. The latter feature eliminates the requirement to use a separate dc-dc converter to provide a voltage boost. The resultant drive system can provide several benefits such as: lowering the average battery current by operating the main bridge at unity power factor; improving the motor torque and efficiency over a wide operating speed range; compensation for battery voltage fluctuations; lowering the motor harmonic losses; elimination of common-mode circulating currents. This paper describes a pwm control scheme for the two inverters to regulate the floating bridge capacitor voltage over the entire dynamic speed range of the motor, whilst also providing the desired motor demand voltage. Experimental results are used to verify both the operation of the motor-drive system and the regulation of the floating capacitor voltage. Experimental results using an induction motor load confirm the practical feasibility of the motor-drive system.
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